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Status of US long term module testing Patrick Gartung University of California, Riverside. DAQ Hardware Requirements Current setup Needs DAQ Software Status Results Conclusions. 1 PC with 4 PCI slots 1 TSC 1 FED 1 FEC 1 A1303 CAEN controller 1 ISA slot 1 DI/O card
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Status of US long term module testingPatrick GartungUniversity of California, Riverside DAQ Hardware Requirements Current setup Needs DAQ Software Status Results Conclusions
1 PC with 4 PCI slots 1 TSC 1 FED 1 FEC 1 A1303 CAEN controller 1 ISA slot 1 DI/O card 1 PCI or ISA slot for ethernet 1 COM port for TRHX control 1 Vienna cold box 1 Vienna cold box PS 1 Torino interlock box 1 Chiller (1.5 kW @ 6° C) 1 TRHX control box 1 NIM crate 3 electrometers (12 channels) Standalone boards 1 TPO 2 CCU 10 PAACB 10 VUTRI 10 hybrid-to-vutri (version d) 1 Fed-mux crate 3 Fed-mux cards 2 PAACB-to-TPO interface (backplane pulsing) 1 LIMO to DI/O cable adapter Power Supplies 1 SYS 127 CAEN crate 1 A128HS CAENET interface 3 A332 CAEN modules (12 high voltage channels) low voltage supplies for TPO, VUTRI’s, CCU’s, FED-mux crate Hardware requirementsfor fully loaded cold box – 10 modules
1 PC with 4 PCI slots 1 TSC 1 FED 1 FEC 1 A1303 CAEN controller 1 ISA slot 1 DI/O card 1 PCI or ISA slot for ethernet 1 COM port for TRHX control 1 Vienna cold box 1 Vienna cold box PS 1 Torino interlock box 1 Chiller (1.5 kW @ 6° C) 1 TRHX control box 1 NIM crate 1 electrometers (4 channels) Standalone boards 1 TPO 1 CCU 4 PAACB 4 VUTRI 4 hybrid-to-vutri (version d) 1 LIMO-to-DI/O cable adapter Power Supplies 1 SYS 127 CAEN crate 1 A128 HS CAENET controller 1 A332 CAEN module (4 high voltage channels) low voltage supplies for TPO, VUTRI’s, CCU’s, FED-mux crate Hardware requirementsfor 4 modules per test cycle
Hardware needswith what we have on hand now *does not include ARC stand needs
Hardware needswith all hardware in route *does not include ARC stand needs
UCSB LT PC Debian 3.0 Linux distribution installed (2.2.20 kernel) DAQ drivers compiled and verified to work Long term test software compiled and verified to work with the hardware we have now Measured noise and pedestals using mainMonitor program Monitored temperature and humidity sensors using ClientTools/test/bin programs Cycled temperature of cold box using mainMonitor program Compiled CAEN A1303 device driver and integrating into LT test software (/dev/a303/dev/a1303) Xrod software compiled and verified to work Measured noise and pedestals Measured gain scan FNAL LT PC RedHat 7.3 Linux distribution installed Compiling DAQ drivers (problems with 2.4.x kernel) Will try Debian 3.0 distribution (2.2.20 kernel) FNAL DAQ PC Debian 2.0 Linux distribution installed Older DAQ drivers compiled and functionality verified Older DAQ version not compatible with current LT test software Software status
Software results • Pedestal and noise measured on a bare hybrid mounted on cold box plate and inserted into cold box slot. • Measurements made using long term test software.
Software results Same hybrid as before. Gain scan and noise measured using Xrod.
Conclusions • Need a few more parts to begin testing modules and working out bugs at UCSB • Software compiled and ready to be verified for real hardware on UCSB machine • Stopping at Fermilab next week to get LT software running on LT machine • With delivery of additional parts Fermilab can begin testing modules and working out bugs
1 PC with 4 PCI slots 1 TSC 1 FED 1 FEC 1 A1303 CAEN controller 1 ISA slot 1 DI/O card 1 PCI or ISA slot for ethernet 1 COM port for TRHX control 1 Vienna cold box 1 Vienna cold box PS 1 Torino interlock box 1 Chiller (1.5 kW @ 6° C) 1 TRHX control box 1 NIM crate 2 electrometers (8 channels) Standalone boards 1 TPO 2 CCU 8 PAACB 8 VUTRI 8 hybrid-to-vutri (version d) 1 Fed-mux crate 2 Fed-mux cards 1 PAACB-to-TPO interface 1 LIMO-to-DI/O cable adapter Power Supplies 1 SYS 127 CAEN crate 1 A128 HS CAENET controller 2 A332 CAEN modules (8 high voltage channels) low voltage supplies for TPO, VUTRI’s, CCU’s, FED-mux crate Hardware requirementsfor 8 modules per test cycle